Simplified Design Method of Slip Control System for Torque Converter Lock-up Clutch 1st Report, Modeling Method

In previous study, H-infinity control theory was applied in order to establish high reliability of a torque converter lock-up clutch slip control system, so that it was confirmed that robust stalility against large characteristic variation of the plant was ensured. There is, however, a problem of re...

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Published inTransactions of the Japan Society of Mechanical Engineers Series C Vol. 70; no. 695; pp. 2087 - 2094
Main Authors HIBINO, Ryoichi, KONO, Katsumi, OSAWA, Masataka, SUZUKI, Toshinari, ITOH, Hiroshi
Format Journal Article
LanguageJapanese
Published The Japan Society of Mechanical Engineers 25.07.2004
Subjects
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ISSN0387-5024
1884-8354
DOI10.1299/kikaic.70.2087

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Abstract In previous study, H-infinity control theory was applied in order to establish high reliability of a torque converter lock-up clutch slip control system, so that it was confirmed that robust stalility against large characteristic variation of the plant was ensured. There is, however, a problem of requiring much time to perform the procedure from the modeling to the designing of the control system because of many experimental data under various conditions to obtain practicable models. We propose new design method that shortens the design time by representing the plant model by interpolation of vertex characteristics, which represent boundary of model set made from the data and knowledge accumulated in the past, and can construct the control system on an onboard ECU. In this paper we aim at modeling in the above method, and show that the time for modeling has been shortened greatly as compared with the conventional method.
AbstractList In previous study, H-infinity control theory was applied in order to establish high reliability of a torque converter lock-up clutch slip control system, so that it was confirmed that robust stalility against large characteristic variation of the plant was ensured. There is, however, a problem of requiring much time to perform the procedure from the modeling to the designing of the control system because of many experimental data under various conditions to obtain practicable models. We propose new design method that shortens the design time by representing the plant model by interpolation of vertex characteristics, which represent boundary of model set made from the data and knowledge accumulated in the past, and can construct the control system on an onboard ECU. In this paper we aim at modeling in the above method, and show that the time for modeling has been shortened greatly as compared with the conventional method.
Author OSAWA, Masataka
HIBINO, Ryoichi
SUZUKI, Toshinari
KONO, Katsumi
ITOH, Hiroshi
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  organization: Toyota Central R & D Labs., Inc
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  organization: Toyota Central R & D Labs., Inc
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  fullname: SUZUKI, Toshinari
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  fullname: ITOH, Hiroshi
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References (5) 片山徹, システム同定入門, (1994), 78-82, 朝倉書店.
(6) Levi, E., C., Complex-Curve Fitting, IRE Trans. on Automatic Control 4, (1959), 37-44.
(3) 深海登世司, 藤巻忠雄, 制御工学, (1985), 106, 東京電機大学出版局.
(1) Osawa, M.et al., Application of H∞ Control Design to Slip Control System fbr Torque Converter Clutch, Preprints of the First IFAC-Workshop on Advances in Automotive Control, (1995), 150-155.
(2) 日比野良一, 大澤正敬, 河野克己, 木挽康志, トルクコンバータロックアップクラッチ・スリップ制御系の最適設計 (第1, H∞制御理論の適用によるロバスト安定化), 機論, 論文番号No.02-1287
(4) 足立修一, ユーザのためのシステム同定理論, (1993), 58-72, 社団法人計測自動制御学会.
References_xml – reference: (5) 片山徹, システム同定入門, (1994), 78-82, 朝倉書店.
– reference: (4) 足立修一, ユーザのためのシステム同定理論, (1993), 58-72, 社団法人計測自動制御学会.
– reference: (1) Osawa, M.et al., Application of H∞ Control Design to Slip Control System fbr Torque Converter Clutch, Preprints of the First IFAC-Workshop on Advances in Automotive Control, (1995), 150-155.
– reference: (2) 日比野良一, 大澤正敬, 河野克己, 木挽康志, トルクコンバータロックアップクラッチ・スリップ制御系の最適設計 (第1, H∞制御理論の適用によるロバスト安定化), 機論, 論文番号No.02-1287
– reference: (3) 深海登世司, 藤巻忠雄, 制御工学, (1985), 106, 東京電機大学出版局.
– reference: (6) Levi, E., C., Complex-Curve Fitting, IRE Trans. on Automatic Control 4, (1959), 37-44.
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Snippet In previous study, H-infinity control theory was applied in order to establish high reliability of a torque converter lock-up clutch slip control system, so...
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SourceType Publisher
StartPage 2087
SubjectTerms Automobile
Hydraulic Equipment
Identification
LPV
Modeling
Simplified Design Method
Subtitle 1st Report, Modeling Method
Title Simplified Design Method of Slip Control System for Torque Converter Lock-up Clutch
URI https://www.jstage.jst.go.jp/article/kikaic1979/70/695/70_695_2087/_article/-char/en
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